Description: Solid mechanics is the branch of mechanics, physics, and mathematics that concerns the behavior of solid matter under external actions. Solid mechanics extensively uses tensors to describe stresses, strains, and the relationship between them.
Curriculum
- 1 Section
- 39 Lessons
- 10 Weeks
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- Mechanics of Solids39
- 2.1Lecture1 Planar Rigid Body
- 2.2Lecture2 Degrees of Freedom
- 2.3Lecture3 Equations of Equilibrium
- 2.4Lecture4 Planar Rigid Body Statics Example 1
- 2.5Lecture5 Rigid Body Statics Example 2
- 2.6Lecture6 Structural Systems with Rigid Bodies
- 2.7Lectures7 Types of 1-D Structural Elements
- 2.8Lectures8 Trusses – Axial members
- 2.9Lecture9 Analysis of Truss Systems
- 2.10Lecture10 Stability of Structural systems
- 2.11Lecture11 Trusses
- 2.12Lecture12 Method of Sections
- 2.13Lecture13 Beams – Example 1
- 2.14Lectures14 Beams – BMD & SFD
- 2.15Lectures15 Loading, Shear & BM Relationships
- 2.16Lecture16 Virtual Work Method
- 2.17Lecture17 Virtual Displacements
- 2.18Lecture18 Finding Virtual Displacements
- 2.19Lecture19 Virtual Work Method – Example 1
- 2.20Lecture20 Virtual Work Method – Example 2
- 2.21Lecture21 Static Friction – An Understanding
- 2.22Lecture22 Belt Friction
- 2.23Lecture 23 Friction : Solving Problems
- 2.24Lecture24 General Concepts – Rigid Bodies
- 2.25Lecture25 Motion of a Rigid Body / a Translation a Rotation
- 2.26Lecture26 Motion of a Point of the Rigid Body
- 2.27Lecture27 Motion of one Point on a Rigid Body Relative to Another
- 2.28Lecture28 Understanding Rotational Motion
- 2.29Lecture29 Kinematics Velocity & Acceleration
- 2.30Lecture30 Understanding Coriolis Acceleration
- 2.31Lecture31 Kinematics – Solving Problems
- 2.32Lecture32 Equations of Motion of a Rigid Body
- 2.33Lecture33 Tips & Techniques 1
- 2.34Lecture34 Tips & Techniques 2
- 2.35Lecture35 Solving Problems 1
- 2.36Lecture36 Solving Problems 2
- 2.37Lecture37 Solving Problems 3
- 2.38Lecture38 Solving Problems 4
- 2.39Lecture39 Tips and Tricks – Engineering Statics